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首页> 外文期刊>IEEE Antennas & Propagation Magazine >An addendum to 'Numerical modeling of an enhanced very early time electromagnetic (VETEM) prototype system'
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An addendum to 'Numerical modeling of an enhanced very early time electromagnetic (VETEM) prototype system'

机译:“增强的非常早期的电磁(VETEM)原型系统的数值建模”的附录

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摘要

For original paper see Cui et al. (IEEE Antennas and Propagation Magazine, vol.42, no.2, p.17-27, 2000 April). Cui et al. proposed two numerical models to simulate an enhanced very early time electromagnetic (VETEM) prototype system, used for buried-object detection and environmental problems. In the first model, the transmitting and receiving loop antennas were accurately analyzed using the method of moments (MoM), and then conjugate gradient (CG) methods with the fast Fourier transform (FFT) were utilized to investigate the scattering from buried conducting plates. In the second model, two magnetic dipoles were used to replace the transmitter and receiver, because the working frequency for the VETEM system is usually low. Both the theory and formulation were correct, and the simulation results for the primary magnetic field and the reflected magnetic field were accurate. We have compared the simulation results for the magnetic field reflected by a wire-conductor mesh on the ground with measured data. They fit very well. However, the scattered magnetic fields in the simulation results were inaccurate, because we did not use a sufficient number of iterations in the CG-FFT algorithm when the frequency was very low.
机译:有关原始论文,请参见Cui等。 (IEEE天线和传播杂志,第42卷,第2期,第17-27页,2000年4月)。崔等。提出了两个数值模型来模拟增强的非常早的电磁(VETEM)原型系统,用于掩埋物体检测和环境问题。在第一个模型中,使用矩量法(MoM)精确地分析了发射和接收环形天线,然后使用具有快速傅立叶变换(FFT)的共轭梯度(CG)方法来研究掩埋导电板的散射。在第二个模型中,因为VETEM系统的工作频率通常较低,所以使用两个磁偶极子来代替发射器和接收器。理论和公式均正确,一次磁场和反射磁场的模拟结果准确。我们将导线导体网在地面上反射的磁场的仿真结果与测量数据进行了比较。他们非常适合。但是,仿真结果中的散射磁场是不准确的,因为当频率非常低时,我们在CG-FFT算法中没有使用足够的迭代次数。

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